Artículo
Effective versus Floquet theory for the Kerr parametric oscillator
Garcia-Mata, Ignacio
; Cortiñas, Rodrigo Gaston; Xiao, Xu; Chávez Carlos, Jorge; Batista, Victor S.; Santos, Lea F.; Wisniacki, Diego Ariel


Fecha de publicación:
03/2024
Editorial:
Verein zur Förderung des Open Access Publizierens in den Quantenwissenschaften
Revista:
Quantum
e-ISSN:
2521-327X
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Parametric gates and processes engineered from the perspective of the static effective Hamiltonian of a driven system are central to quantum technology. However, the perturbative expansions used to derive static effective models may not be able to efficiently capture all the relevant physics of the original system. In this work, we investigate the conditions for the validity of the usual low-order static effective Hamiltonian used to describe a Kerr oscillator under a squeezing drive. This system is of fundamental and technological interest. In particular, it has been used to stabilize Schrödinger cat states, which have applications for quantum computing. We compare the states and energies of the effective static Hamiltonian with the exact Floquet states and quasi-energies of the driven system and determine the parameter regime where the two descriptions agree. Our work brings to light the physics that is left out by ordinary static effective treatments and that can be explored by state-of-the-art experiments.
Palabras clave:
QUANTUM CHAOS
,
QUANTUM COMPUTING
,
KERR
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Colecciones
Articulos(IFIBA)
Articulos de INST.DE FISICA DE BUENOS AIRES
Articulos de INST.DE FISICA DE BUENOS AIRES
Articulos(IFIMAR)
Articulos de INST.DE INVESTIGACIONES FISICAS DE MAR DEL PLATA
Articulos de INST.DE INVESTIGACIONES FISICAS DE MAR DEL PLATA
Citación
Garcia-Mata, Ignacio; Cortiñas, Rodrigo Gaston; Xiao, Xu; Chávez Carlos, Jorge; Batista, Victor S.; et al.; Effective versus Floquet theory for the Kerr parametric oscillator; Verein zur Förderung des Open Access Publizierens in den Quantenwissenschaften; Quantum; 8; 3-2024; 1-13
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